在模拟废物气化过程中,钙化合物的加入提高了氢的产率和金属铬的保留率

Lin Chiou-Liang, Wu Min-Hao, Hsu Tzu-Pin
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引用次数: 0

摘要

本研究考察了不同钙化合物(Ca(NO3)2、CaCO3和CaO)作为添加剂时合成气的组成和金属铬的分布。本实验以人工模拟废弃物为生物质进行气化,以金属铬为模拟废弃物中的重金属。分析了合成气的组成、H2的产率和金属铬的保留率。结果表明,3种钙化合物均能提高H2的比例,但差异不显著。测定了不同粒径床料中铬的含量,结果表明,粒径在1.00 mm以上和0.35 mm以下的床料中铬的含量较高。在700℃的操作温度下,钙化合物中金属铬的含量最高,因为在这个低温下金属铬的蒸发很少。因此,在废物气化过程中,在流化床中添加钙化合物可以提高合成气中H2的产率,增加砂床中金属铬的残留含量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Addition of Calcium Compounds Improve the Yield of Hydrogen and Retention of Chromium Metal during the Gasification of Simulated Waste
This study explored the constituents of syngas and the distribution of chromium metal when different calcium compounds (Ca(NO3)2, CaCO3 and CaO) were used as additives. In this experiment, artificially simulated waste was taken as the biomass for gasification and chromium metal was used as the heavy metal in the simulated waste. The syngas composition, the yield of H2 and the retention of chromium metal were analyzed. Results showed that all the three calcium compounds could increase the proportion of H2, but that there was no significant difference between them. The contents of chromium in the bed materials with different particle size were measured and displayed that the concentrations of chromium were higher in the bed materials with particle diameters above 1.00 mm and below 0.35 mm. Under the operation temperature of 700°C, the calcium compounds retained the highest content of chromium metal, for it evaporated only a little under this low temperature. Therefore, adding calcium compounds into the fluidized bed during the gasification of the waste could enhance the yield of H2 in the syngases and increase the content of retained chromium metal in the sand bed.
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来源期刊
Journal of Residuals Science & Technology
Journal of Residuals Science & Technology 环境科学-工程:环境
自引率
0.00%
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0
审稿时长
>36 weeks
期刊介绍: The international Journal of Residuals Science & Technology (JRST) is a blind-refereed quarterly devoted to conscientious analysis and commentary regarding significant environmental sciences-oriented research and technical management of residuals in the environment. The journal provides a forum for scientific investigations addressing contamination within environmental media of air, water, soil, and biota and also offers studies exploring source, fate, transport, and ecological effects of environmental contamination.
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